P-type ATPases ubiquitously pump cations across biological membranes to maintain vital ion gradients. Among those, the chimeric K+ uptake system KdpFABC is unique. While ATP hydrolysis is accomplished by the P-type ATPase subunit KdpB, K+ has been assumed to be transported by the channel-like subunit KdpA. A first crystal structure uncovered its overall topology, suggesting such a spatial separation of energizing and transporting units. Here, we report two cryo-EM structures of the 157 kDa, asymmetric KdpFABC complex at 3.7 Å and 4.0 Å resolution in an E1 and an E2 state, respectively. Unexpectedly, the structures suggest a translocation pathway through two half-channels along KdpA and KdpB, uniting the alternating-access mechanism of activ...
We elucidated a unique transport mechanism by a protein complex that can transport potassium with hi...
We elucidated a unique transport mechanism by a protein complex that can transport potassium with hi...
In bacteria, K+ is used to maintain cell volume and osmotic potential. Homeostasis normally involves...
P-type ATPases ubiquitously pump cations across biological membranes to maintain vital ion gradients...
P-type ATPases ubiquitously pump cations across biological membranes to maintain vital ion gradients...
P-type ATPases ubiquitously pump cations across biological membranes to maintain vital ion gradients...
P-type ATPases ubiquitously pump cations across biological membranes to maintain vital ion gradients...
P-type ATPases ubiquitously pump cations across biological membranes to maintain vital ion gradients...
KdpFABC, a high-affinity K+ pump, combines the ion channel KdpA and the P-type ATPase KdpB to secure...
KdpFABC, a high-affinity K+ pump, combines the ion channel KdpA and the P-type ATPase KdpB to secure...
KdpFABC, a high-affinity K+ pump, combines the ion channel KdpA and the P-type ATPase KdpB to secure...
We elucidated a unique transport mechanism by a protein complex that can transport potassium with hi...
We elucidated a unique transport mechanism by a protein complex that can transport potassium with hi...
We elucidated a unique transport mechanism by a protein complex that can transport potassium with hi...
We elucidated a unique transport mechanism by a protein complex that can transport potassium with hi...
We elucidated a unique transport mechanism by a protein complex that can transport potassium with hi...
We elucidated a unique transport mechanism by a protein complex that can transport potassium with hi...
In bacteria, K+ is used to maintain cell volume and osmotic potential. Homeostasis normally involves...
P-type ATPases ubiquitously pump cations across biological membranes to maintain vital ion gradients...
P-type ATPases ubiquitously pump cations across biological membranes to maintain vital ion gradients...
P-type ATPases ubiquitously pump cations across biological membranes to maintain vital ion gradients...
P-type ATPases ubiquitously pump cations across biological membranes to maintain vital ion gradients...
P-type ATPases ubiquitously pump cations across biological membranes to maintain vital ion gradients...
KdpFABC, a high-affinity K+ pump, combines the ion channel KdpA and the P-type ATPase KdpB to secure...
KdpFABC, a high-affinity K+ pump, combines the ion channel KdpA and the P-type ATPase KdpB to secure...
KdpFABC, a high-affinity K+ pump, combines the ion channel KdpA and the P-type ATPase KdpB to secure...
We elucidated a unique transport mechanism by a protein complex that can transport potassium with hi...
We elucidated a unique transport mechanism by a protein complex that can transport potassium with hi...
We elucidated a unique transport mechanism by a protein complex that can transport potassium with hi...
We elucidated a unique transport mechanism by a protein complex that can transport potassium with hi...
We elucidated a unique transport mechanism by a protein complex that can transport potassium with hi...
We elucidated a unique transport mechanism by a protein complex that can transport potassium with hi...
In bacteria, K+ is used to maintain cell volume and osmotic potential. Homeostasis normally involves...